首页> 外文期刊>Australian Journal of Crop Science >Interactions among genes Sr2/Yr30, Lr34/Yr18/Sr57 and Lr68 confer enhanced adult plant resistance to rust diseases in common wheat (Triticum aestivum L.) line 'Arula'
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Interactions among genes Sr2/Yr30, Lr34/Yr18/Sr57 and Lr68 confer enhanced adult plant resistance to rust diseases in common wheat (Triticum aestivum L.) line 'Arula'

机译:Sr2 / Yr30,Lr34 / Yr18 / Sr57和Lr68基因之间的相互作用增强了成年植物对普通小麦(Artic)锈病的抗性

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Common wheat line Arula displays an acceptable level of adult plant resistance (APR) to stripe rust (YR), leaf rust (LR) and stem rust (SR) in Mexico, and to SR (Ug99 races) in Kenya. Present study was conducted to identify genetic loci that confer resistance in Arula and to understand their interactions for rust resistance. A recombinant inbred line (RIL) population (190 lines) developed from the cross of Arula with susceptible parent Apav was phenotyped under artificially created epidemics of the three rusts in 2014, 2015 and 2016 in Mexico, and for stem rust (Ug99) during the off and main seasons of 2015 in Kenya. The RIL population and parents were genotyped with Sr2/Yr30-linked simple sequence repeat (SSR) marker gwm533 and two sequence tagged site (STS) markers (Lr34/Yr18/Sr57-csLV34 and Lr68-csGS) in addition to genotyping using Illumina iSelect 90K SNP array. A genetic map of 2,634 polymorphic markers (2,631 SNPs, 1 SSR and 2 STS markers) was constructed to locate the resistance loci. Composite interval mapping (CIM) was conducted to identify quantitative trait loci (QTL) associated with rust resistance using phenotypic and genotypic data in Windows QTL cartographer version 2.5. Two consistent QTL contributed by Arula were detected on chromosomes 3BS and 7DS, which corresponded to the previously known APR genes Sr2/Yr30 and Lr34/Yr18/Sr57, respectively. Sr2/Yr30 explained 1.1-14.7% and 41.0-61.5% of the phenotypic variation for YR and SR, respectively; whereas Lr34/Yr18/Sr57 accounted for 22.5-78.0%, 40.0-84.3% and 13.8-24.8% of the phenotypic variation for YR, LR and SR, respectively. Arula was also found to carry the positive allele for marker csGS closely linked to gene Lr68 on chromosome 7BL, although this gene was not detected using CIM. Based on presence or absence of identified genes/QTLs, lines were classified into different groups and t-tests were used to compare the mean relative area under disease progress curve (relAUDPC) over years of different gene combinations. RILs carrying both Lr34/Yr18/Sr57 and Lr68 showed significantly higher APR to LR showing the benefit of gene combination Lr34/Yr18/Sr57 + Lr68. Our results show that RILs possessing both Sr2/Yr30 and Lr34/Yr18/Sr57 had significantly enhanced APR to all three rusts in field trials conducted in Mexico and Kenya. Strategic utilization of these two pleiotropic, multi-pathogen resistance genes with other minor genes is recommended to develop durable rust resistant wheat cultivars.
机译:在墨西哥,普通小麦品系Arula对条纹锈病(YR),叶锈病(LR)和茎锈病(SR)和肯尼亚的SR(Ug99种族)的成年植物抗性(APR)处于可接受的水平。进行本研究以鉴定赋予阿鲁拉(Arula)抗性的遗传基因座,并了解它们之间的抗锈性相互作用。从2014年,2015年和2016年在墨西哥人工创建的三种锈病流行病的表型分型由Arula与易感亲本Apav杂交的自交系(RIL)种群(190种)进行了表型分析。肯尼亚的2015年主要季节。除了使用Illumina iSelect进行基因分型外,还使用Sr2 / Yr30连锁的简单序列重复(SSR)标记gwm533和两个序列标记位点(STS)标记(Lr34 / Yr18 / Sr57-csLV34和Lr68-csGS)对RIL人群和父母进行基因分型。 90K SNP阵列。构建了2,634个多态性标记(2,631个SNP,1个SSR和2个STS标记)的遗传图谱,以定位抗性基因座。使用Windows QTL制图师2.5版中的表型和基因型数据,进行了复合区间映射(CIM),以识别与防锈性相关的定量性状位点(QTL)。在3BS和7DS染色体上检测到由Arula贡献的两个一致的QTL,分别对应于先前已知的APR基因Sr2 / Yr30和Lr34 / Yr18 / Sr57。 Sr2 / Yr30分别解释了YR和SR的表型变异的1.1-14.7%和41.0-61.5%;而Lr34 / Yr18 / Sr57分别占YR,LR和SR表型变异的22.5-78.0%,40.0-84.3%和13.8-24.8%。尽管未使用CIM检测到该基因,但也发现Arula携带与7BL染色体上的Lr68基因密切相关的标记csGS的阳性等位基因。根据是否存在已鉴定的基因/ QTL,将品系分为不同的组,并使用t检验比较不同基因组合多年来的疾病进展曲线下的平均相对面积(relAUDPC)。同时携带Lr34 / Yr18 / Sr57和Lr68的RILs对LR的APR明显更高,显示了基因组合Lr34 / Yr18 / Sr57 + Lr68的益处。我们的结果表明,在墨西哥和肯尼亚进行的田间试验中,同时具有Sr2 / Yr30和Lr34 / Yr18 / Sr57的RIL显着提高了所有三种锈病的APR。建议将这两个多效性,多病原体抗性基因与其他次要基因一起战略应用,以开发持久的抗锈小麦品种。

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